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Evelyn Abagayle Boyd; Kelly Best Lazar; Matthew Voigt – Journal of Geoscience Education, 2024
As a response to the increased need for humanization and representation in STEM, a set of open-source, customizable icons was developed using stackable vector graphics to allow participants to design their own research icons. These icons have the potential to both grant research participant's greater agency in their representation and attempt to…
Descriptors: Participant Characteristics, Personal Autonomy, Earth Science, Visualization
A. Watson; B. M. Kennedy; J. Davidson; E. Brogt; A. Jolley – Journal of Geoscience Education, 2024
Geological skills such as interpreting outcrops are often taught during fieldwork. However, recent advancements in digital technologies and the demand for more inclusive and accessible learning has provided an opportunity to teach these skills in virtual field trips (VFT). The Iceland VFT was developed to teach students about volcanic features and…
Descriptors: Geology, Physical Geography, Field Trips, Computer Simulation
Johnson, Elijah T.; McNeal, Karen S. – Journal of Geoscience Education, 2022
Spatial thinking skills are crucial for success in any of the STEM (science, technology, engineering, and mathematics) domains, and they are malleable. One approach to support the development of student spatial skills is through the use of innovative technologies, like the augmented reality (AR) sandbox, that can also effectively teach geoscience…
Descriptors: Undergraduate Students, Student Attitudes, Spatial Ability, Topography
McNeal, Peggy M.; Petcovic, Heather L. – Journal of Geoscience Education, 2020
The geosciences consist of multiple disciplines including geology, oceanography, and atmospheric science. Significant work expended to understand spatial thinking skills important to teaching and learning geology has advanced our ability to support students in geology courses and to achieve increased student success, retention, and diversity in…
Descriptors: Earth Science, Science Education, Educational Research, Spatial Ability
Kastens, Kim A.; Zrada, Melissa; Turrin, Margie – Journal of Geoscience Education, 2020
Question-asking is a necessary step towards formulating hypotheses, making decisions, and solving problems, and is Practice #1 in the Next Generation Science Standards. To improve question-asking, educators and researchers need a way to categorize and evaluate students' questions, so as to judge whether an intervention has been effective. We…
Descriptors: Undergraduate Students, Problem Solving, Data Collection, Visualization
Bateman, Kathryn M.; Ham, Joy; Barshi, Naomi; Tikoff, Basil; Shipley, Thomas F. – Journal of Geoscience Education, 2023
Spatial skills are embedded in all aspects of the geosciences. The teaching and learning of spatial skills has been a challenging, but vital, endeavor. To support student learning of spatial skills in undergraduate courses, we designed scaffolds for spatially dependent content in a mid-level geoscience course using playdough to allow students to…
Descriptors: Geology, Science Instruction, Course Content, Spatial Ability
McNeal, Peggy; Ellis, Todd; Petcovic, Heather – Journal of Geoscience Education, 2018
A survey with nine meteorological charts, maps, and images from a 2015 significant weather event was administered to meteorologists (N = 93) to identify which spatial thinking skills they report using with each chart, map, and image. Results reveal high reported use of mental animation (74.6%), disembedding (72.4%), and perspective taking (71.6%)…
Descriptors: Meteorology, Spatial Ability, Charts, Maps
Stofer, Kathryn A. – Journal of Geoscience Education, 2016
The oft-repeated phrase "a picture is worth a thousand words" supposes that an image can replace a profusion of words to more easily express complex ideas. For scientific visualizations that represent profusions of numerical data, however, an untranslated academic visualization suffers the same pitfalls untranslated jargon does. Previous…
Descriptors: Visualization, Pattern Recognition, Semi Structured Interviews, Oceanography
Giorgis, Scott; Mahlen, Nancy; Anne, Kirk – Journal of Geoscience Education, 2017
The augmented reality (AR) sandbox bridges the gap between two-dimensional (2D) and three-dimensional (3D) visualization by projecting a digital topographic map onto a sandbox landscape. As the landscape is altered, the map dynamically adjusts, providing an opportunity to discover how to read topographic maps. We tested the hypothesis that the AR…
Descriptors: Introductory Courses, Earth Science, Nonmajors, Topography
Horowitz, Seth S.; Schultz, Peter H. – Journal of Geoscience Education, 2014
Data visualization is a core component of every scientific project; however, generation of physical models previously depended on expensive or labor-intensive molding, sculpting, or laser sintering techniques. Physical models have the advantage of providing not only visual but also tactile modes of inspection, thereby allowing easier visual…
Descriptors: Technology Uses in Education, Computer Peripherals, Printing, Geology
Ormand, Carol J.; Shipley, Thomas F.; Tikoff, Basil; Dutrow, Barbara; Goodwin, Laurel B.; Hickson, Thomas; Atit, Kinnari; Gagnier, Kristin; Resnick, Ilyse – Journal of Geoscience Education, 2017
Spatial visualization is an essential prerequisite for understanding geological features at all scales, such as the atomic structures of minerals, the geometry of a complex fault system, or the architecture of sedimentary deposits. Undergraduate geoscience majors bring a range of spatial skill levels to upper-level courses. Fortunately, spatial…
Descriptors: Spatial Ability, Visualization, Curriculum, Geology
Giorgis, Scott – Journal of Geoscience Education, 2015
Three-dimensional thinking skills are extremely useful for geoscientists, and at the undergraduate level, these skills are often emphasized in structural geology courses. Google Earth is a powerful tool for visualizing the three-dimensional nature of data collected on the surface of Earth. The results of a 5 y pre- and posttest study of the…
Descriptors: Science Education, Geology, Internet, Map Skills
Johnson, Cari L.; Semple, Ian L.; Creem-Regehr, Sarah H. – Journal of Geoscience Education, 2013
The scale of features shown on outcrop photographs can be critical to geoscience interpretations, yet little is known about how well individuals estimate scale in images. This study utilizes a visualization test in which participants were asked to estimate the absolute size of several boxes shown in outcrop images using high resolution, stitched…
Descriptors: Scaling, Cues, Visual Aids, Photography
Bush, Drew; Sieber, Renee; Seiler, Gale; Chandler, Mark – Journal of Geoscience Education, 2016
A gap has existed between the tools and processes of scientists working on anthropogenic global climate change (AGCC) and the technologies and curricula available to educators teaching the subject through student inquiry. Designing realistic scientific inquiry into AGCC poses a challenge because research on it relies on complex computer models,…
Descriptors: Climate, Earth Science, Curriculum Design, Science Curriculum
Ormand, Carol J.; Manduca, Cathryn; Shipley, Thomas F.; Tikoff, Basil; Harwood, Cara L.; Atit, Kinnari; Boone, Alexander P. – Journal of Geoscience Education, 2014
Spatial thinking skills are critical to success in many subdisciplines of the geosciences. We tested students' spatial skills in geoscience courses at three institutions (a public research university, a comprehensive university, and a liberal arts college, all in the midwest) over a two-year period. We administered standard psychometric tests of…
Descriptors: Earth Science, Spatial Ability, Thinking Skills, College Science
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